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Tangential Networks of Precocious Neurons and Early Axonal Outgrowth in the Embryonic Human Forebrain

  • Irina Bystron*
  • , Zoltán Molnár
  • , Vladimir Otellin
  • , Colin Blakemore
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

We used a combination of immunohistochemistry and carbocyanine dye tracing to study neurons and their processes in the human embryonic forebrain, 4-7 weeks after conception, before the onset of synaptogenesis. We discovered a widespread network of precocious MAP2 (microtubule-associated protein 2)-immunoreactive cells, with long, nonaxonal processes, before the appearance of the cortical plate and the establishment of thalamocortical connectivity. Dye tracing revealed that the processes of these precocious cells form tangential links between intermediate zones of the thalamus, ganglionic eminence, hypothalamus, and cortical preplate. The spatiotemporal distribution and morphology of the precocious neurons in the cortical preplate suggest that they are generated outside the cerebral wall rather than in the local ventricular zone. The first thalamocortical axons and axons of preplate cells extend across diencephalotelencephalic and striatocortical boundaries before the arrival of the first cortical plate neurons. Precocious cells may provide initial communication between subdivisions of the embryonic brain as well as guidance cues for navigation of growing axons and/or transverse neuronal migration. Copyright © 2005 Society for Neuroscience. Copyright © 2005 Society for Neuroscience
Original languageEnglish
Pages (from-to)2781-2792
JournalThe Journal of Neuroscience
Volume25
Issue number11
DOIs
Publication statusPublished - 16 Mar 2005
Externally publishedYes

Research Keywords

  • GAP43
  • Human forebrain development
  • MAP2
  • Pioneer neurons
  • Preplate
  • Thalamocortical and corticofugal projections

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